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BSI PD CEN/CLC/TR 17603-31-04:2021

$215.11

Space Engineering. Thermal design handbook – Conductive Heat Transfer

Published By Publication Date Number of Pages
BSI 2021 158
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This Part 4 of the spacecraft thermal control and design data handbooks, provides information on calculating the conductive heat transfer rate for a variety of two and three-dimensional configurations.

Calculations for the conductance of the interface between two surfaces (joints) require special consideration and are included as a separate clause.

The Thermal design handbook is published in 16 Parts

TR 17603-31-01 Thermal design handbook – Part 1: View factors

TR 17603-31-02 Thermal design handbook – Part 2: Holes, Grooves and Cavities

TR 17603-31-03 Thermal design handbook – Part 3: Spacecraft Surface Temperature

TR 17603-31-04 Thermal design handbook – Part 4: Conductive Heat Transfer

TR 17603-31-05 Thermal design handbook – Part 5: Structural Materials: Metallic and Composite

TR 17603-31-06 Thermal design handbook – Part 6: Thermal Control Surfaces

TR 17603-31-07 Thermal design handbook – Part 7: Insulations

TR 17603-31-08 Thermal design handbook – Part 8: Heat Pipes

TR 17603-31-09 Thermal design handbook – Part 9: Radiators

TR 17603-31-10 Thermal design handbook – Part 10: Phase – Change Capacitors

TR 17603-31-11 Thermal design handbook – Part 11: Electrical Heating

TR 17603-31-12 Thermal design handbook – Part 12: Louvers

TR 17603-31-13 Thermal design handbook – Part 13: Fluid Loops

TR 17603-31-14 Thermal design handbook – Part 14: Cryogenic Cooling

TR 17603-31-15 Thermal design handbook – Part 15: Existing Satellites

TR 17603-31-16 Thermal design handbook – Part 16: Thermal Protection System

PDF Catalog

PDF Pages PDF Title
2 undefined
13 1 Scope
14 2 References
15 3 Terms, definitions and symbols
3.1 Terms and definitions
3.2 Abbreviated terms
3.3 Symbols
17 4 Conductive shape factors
4.1 General
18 4.2 Planar-planar surfaces
4.2.1 Two-dimensional configurations
4.2.1.1 Strips of equal width
4.2.1.2 Strips of unequal width
20 4.3 Planar surface-cylindrical surface
4.3.1 Two-dimensional configurations
4.3.1.1 Plane and cylinder of rectangular cross section
21 4.3.1.2 Plane and circular cylinder
23 4.3.2 Axisymmetrical configuration
4.3.2.1 Plane and circular cylinder
25 4.4 Planar surface-spherical surface
4.4.1 Plane and sphere
27 4.5 Cylindrical-cylindrical surfaces
4.5.1 Two-dimensional configurations
4.5.1.1 Circular cylinders
29 4.5.1.2 Circular rods with holes
35 4.5.1.3 Rectangular bars with holes
41 4.5.1.4 Polygonal bars with holes
43 4.6 Spherical-spherical surfaces
4.6.1 Two concentric spheres
45 5 Thermal joint conductance
5.1 General
46 5.1.1 Empirical correlations
5.1.1.1 Fletcher & gyorog correlation
49 5.1.1.2 Thomas & Probert correlation
50 5.1.2 Thermal interface materials
52 5.1.3 Joint geometries
53 5.2 Bare metallic joints
64 5.2.1 Metal-metal joints
5.2.1.1 Two equal materials
79 5.2.1.2 Two different materials
92 5.2.1.3 Multilayered joints
93 5.2.1.4 Bolted joints
96 5.2.2 Metal-composite joints
98 5.2.3 Composite-composite joints
100 5.3 Interfacial materials between metals
5.3.1 Metallic foils between metals
5.3.1.1 Similar metals
107 5.3.1.2 Bolted joints
111 5.3.2 Metallic oxide powders between similar metals
5.3.3 Porous metallic materials between similar metals.
121 5.3.4 Insulating spacers between similar metals
135 5.3.5 Fluids between metals
5.3.5.1 Similar metals
139 5.3.5.2 Dissimilar metals
144 5.3.6 Elastomeric spacers between similar metals
147 5.3.6.1 Elastomeric thermal fillers
153 5.4 Outgassing data
BSI PD CEN/CLC/TR 17603-31-04:2021
$215.11